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, the proteolytic mechanisms involved in dental pulp inflammation, particularly in various 2D/3D models. The postdoctoral researcher will produce bioactive protein fragments and characterise their roles in dental
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of electrical charges at extremely small scales. However, these processes occur in trillionths of a second, far too fast for current methods to capture. The ERC-funded UltraWave project aims to overcome
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extracellular matrix components and growth factors. Perform 2D and 3D cell culture experiments using intestinal cell lines and organoid models. Conduct cell biology, immunofluorescence and microscopy experiments
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for studying and engineering electronic properties in quantum materials. By stacking different two-dimensional (2D) materials, it is possible to create systems with new and tunable properties. In
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been proposed: traditional computer‑algebra methods [3], reduction of the problem modulo a prime p [6, 2], and symbolic‑numeric methods [4, 1]. This postdoc proposal concerns the second modular approach
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versatility of the size and redox properties of the f-block elements. The second objective is to use these ligands to promote the formation of multimetallic assemblies in which the metal atoms are close enough
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aromatics. This wil be achieved establishing conversion-selectivity curves at different temperatures and pressures and by co-feeding some potential intermediates. In a second step, key reaction parameters and
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microscopy techniques to localize the key marker proteins identified. In a second phase, the postdoctoral fellow will identify the molecular mechanisms underlying the morphogenesis of T-tubules and the SR